Barcelona Supercomputing Center (BSC), Plaça d'Eusebi Güell, 1-3, Barcelona 08034, Spain.
Department of Biotechnology & Enzyme Catalysis, Institute of Biochemistry, University of Greifswald, Felix-Hausdorff-Str. 4, D-17487 Greifswald, Germany.
J Phys Chem B. 2023 Mar 30;127(12):2661-2670. doi: 10.1021/acs.jpcb.2c07091. Epub 2023 Mar 21.
With advances in protein structure predictions, the number of available high-quality structures has increased dramatically. In light of these advances, structure-based enzyme engineering is expected to become increasingly important for optimizing biocatalysts for industrial processes. Here, we present AsiteDesign, a Monte Carlo-based protocol for structure-based engineering of active sites. AsiteDesign provides a framework for introducing new catalytic residues in a given binding pocket to either create a new catalytic activity or alter the existing one. AsiteDesign is implemented using pyRosetta and incorporates enhanced sampling techniques to efficiently explore the search space. The protocol was tested by designing an alternative catalytic triad in the active site of esterase (PFE). The designed variant was experimentally verified to be active, demonstrating that AsiteDesign can find alternative catalytic triads. Additionally, the AsiteDesign protocol was employed to enhance the hydrolysis of a bulky chiral substrate (1-phenyl-2-pentyl acetate) by PFE. The experimental verification of the designed variants demonstrated that F158L/F198A and F125A/F158L mutations increased the hydrolysis of 1-phenyl-2-pentyl acetate from 8.9 to 66.7 and 23.4%, respectively, and reversed the enantioselectivity of the enzyme from () to ()-enantiopreference, with 32 and 55% enantiomeric excess (ee), respectively.
随着蛋白质结构预测技术的进步,可用的高质量结构数量大幅增加。有鉴于此,基于结构的酶工程预计将在优化用于工业过程的生物催化剂方面变得越来越重要。在这里,我们提出了 AsiteDesign,这是一种基于 Monte Carlo 的用于活性位点的基于结构的工程设计的协议。AsiteDesign 提供了在给定结合口袋中引入新催化残基的框架,以创建新的催化活性或改变现有催化活性。AsiteDesign 使用 pyRosetta 实现,并结合了增强采样技术来有效地探索搜索空间。该协议通过在酯酶 (PFE) 的活性位点中设计替代催化三联体进行了测试。设计的变体经过实验验证是有活性的,表明 AsiteDesign 可以找到替代的催化三联体。此外,还使用 AsiteDesign 协议来增强 PFE 对大体积手性底物 (1-苯基-2-戊基乙酸酯) 的水解作用。对设计变体的实验验证表明,F158L/F198A 和 F125A/F158L 突变分别将 1-苯基-2-戊基乙酸酯的水解度从 8.9%提高到 66.7%和 23.4%,并将酶的对映选择性从 ()-对映体偏好性逆转至 ()-对映体偏好性,ee 值分别为 32%和 55%。